Aeromotive Quick Connector Adapter -6an Female to 5/16in 15117
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Attributes
- Product Type: Fuel Line Adapter
- Material: Aluminum
- Color: Black Anodized
- Size and Dimensions: 6 AN Female O-Ring to 5/16 in. (7.9 mm) SAE Female Quick Disconnect
- Weight: 0.2 lbs (0.09 kg)
- Capacity/Performance: Compatible with standard fuel line systems
- Features: Straight design, O-ring seal for leak prevention
- Compatibility: Works with various automotive fuel systems
- Included Components: Aeromotive Quick Connector Adapter -6an Female to 5/16in 15117
- Warranty: Limited Lifetime Warranty
Product Description
The Aeromotive Quick Connector Adapter -6an Female to 5/16in 15117 is a top-quality fuel line adapter designed for automotive enthusiasts and professionals. This adapter seamlessly connects a 6 AN female O-ring to a 5/16 in. (7.9 mm) SAE female quick disconnect. It is made from durable aluminum and features a sleek black anodized finish, ensuring both longevity and a professional look.
Measuring precisely for optimal performance, this lightweight adapter (weighing only 0.2 lbs / 0.09 kg) is perfect for enhancing your fuel system without adding unnecessary bulk. Its straight design and O-ring seal provide a secure connection, preventing leaks and ensuring efficient fuel flow. Whether you are upgrading your vehicle’s fuel system or performing maintenance, this adapter is an essential component. Order now and experience the reliability and performance of the Aeromotive Quick Connector Adapter!
Features & Benefits
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Feature: Durable Aluminum Construction
Benefit: Ensures long-lasting performance and resistance to corrosion, enhancing the lifespan of your fuel system. -
Feature: O-Ring Seal
Benefit: Provides a leak-free connection, ensuring safe and efficient fuel flow during operation. -
Feature: Lightweight Design (0.2 lbs / 0.09 kg)
Benefit: Easy to install and handle, making it a convenient addition to any automotive project. -
Feature: Straight Design
Benefit: Simplifies installation and allows for easier routing of fuel lines, improving overall system efficiency.